Effect of Natural Fe2O3 Doping on Performance of Lithium Phospate Ceramic Glass as Secondary Battery Cathode

Natural Fe2O3 doped lithium phosphate Ceramic-glass was made by glass route method at 900 oC with the composition of 5Li2CO3:15ZnO : x Fe2O3: (80 – x) P2O5­ where x =  0; 0.5; 1.5 (in mol percent). Thermal stability of sample was studied through determination of glass temperature Tg and crystal temp...

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Main Authors: Mukhtar Effendi, Dina Rahmawati, Wahyu Tri Cahyanto, Wahyu Widanarto
Format: Article
Language:English
Published: Jenderal Soedirman University 2017-11-01
Series:Molekul
Subjects:
Online Access:https://ojs.jmolekul.com/ojs/index.php/jm/article/view/252
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author Mukhtar Effendi
Dina Rahmawati
Wahyu Tri Cahyanto
Wahyu Widanarto
author_facet Mukhtar Effendi
Dina Rahmawati
Wahyu Tri Cahyanto
Wahyu Widanarto
author_sort Mukhtar Effendi
collection DOAJ
description Natural Fe2O3 doped lithium phosphate Ceramic-glass was made by glass route method at 900 oC with the composition of 5Li2CO3:15ZnO : x Fe2O3: (80 – x) P2O5­ where x =  0; 0.5; 1.5 (in mol percent). Thermal stability of sample was studied through determination of glass temperature Tg and crystal temperature Tc. XRD pattern and LCR meter measurement were carried out to determine phase, structure and ionic conductivity of the ceramic-glass samples. LiFePO4 was formed at 1.5% addition of Fe2O3. Ionic conductivity rise up by the increasing Fe2O3 concentration. The highest electric conductivity is 8,42 x 10-4 S/cm which was obtained at 1.5% addition of Fe2O3
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spelling doaj.art-34d7a140ad2a41adae99a03adce378cf2022-12-22T02:33:12ZengJenderal Soedirman UniversityMolekul1907-97612503-03102017-11-0112210911610.20884/1.jm.2017.12.2.252231Effect of Natural Fe2O3 Doping on Performance of Lithium Phospate Ceramic Glass as Secondary Battery CathodeMukhtar Effendi0Dina Rahmawati1Wahyu Tri Cahyanto2Wahyu Widanarto3Physics Department , Faculty of Mathematics and Natural Sciences, Jenderal Soedirman University, PurwokertoPhysics Department, Faculty of Mathematics and Natural Sciences, Bandung Institute of Technology, BandungPhysics Department, Faculty of Mathematics and Natural Sciences, Jenderal Soedirman University, PurwokertoPhysics Department , Faculty of Mathematics and Natural Sciences, Jenderal Soedirman University, PurwokertoNatural Fe2O3 doped lithium phosphate Ceramic-glass was made by glass route method at 900 oC with the composition of 5Li2CO3:15ZnO : x Fe2O3: (80 – x) P2O5­ where x =  0; 0.5; 1.5 (in mol percent). Thermal stability of sample was studied through determination of glass temperature Tg and crystal temperature Tc. XRD pattern and LCR meter measurement were carried out to determine phase, structure and ionic conductivity of the ceramic-glass samples. LiFePO4 was formed at 1.5% addition of Fe2O3. Ionic conductivity rise up by the increasing Fe2O3 concentration. The highest electric conductivity is 8,42 x 10-4 S/cm which was obtained at 1.5% addition of Fe2O3https://ojs.jmolekul.com/ojs/index.php/jm/article/view/252battery cathode, ceramic-glass, conductivity, lithium phosphate
spellingShingle Mukhtar Effendi
Dina Rahmawati
Wahyu Tri Cahyanto
Wahyu Widanarto
Effect of Natural Fe2O3 Doping on Performance of Lithium Phospate Ceramic Glass as Secondary Battery Cathode
Molekul
battery cathode, ceramic-glass, conductivity, lithium phosphate
title Effect of Natural Fe2O3 Doping on Performance of Lithium Phospate Ceramic Glass as Secondary Battery Cathode
title_full Effect of Natural Fe2O3 Doping on Performance of Lithium Phospate Ceramic Glass as Secondary Battery Cathode
title_fullStr Effect of Natural Fe2O3 Doping on Performance of Lithium Phospate Ceramic Glass as Secondary Battery Cathode
title_full_unstemmed Effect of Natural Fe2O3 Doping on Performance of Lithium Phospate Ceramic Glass as Secondary Battery Cathode
title_short Effect of Natural Fe2O3 Doping on Performance of Lithium Phospate Ceramic Glass as Secondary Battery Cathode
title_sort effect of natural fe2o3 doping on performance of lithium phospate ceramic glass as secondary battery cathode
topic battery cathode, ceramic-glass, conductivity, lithium phosphate
url https://ojs.jmolekul.com/ojs/index.php/jm/article/view/252
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